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Anaerobic co-digestion of sludge and microalgae grown in municipal wastewater - a feasibility study

机译:城市废水中生长的污泥和微藻的厌氧共消化 - 可行性研究

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In this study a natural mix of microalgae grown in wastewater of municipal character was co-digested with sewage sludge in mesophilic conditions, in both batch and semi-continuous modes. The semi-continuous experiment was divided into two periods with OLR1 (organic loading rate) of 2.4 kg volatile solids (VS) m(-3) d(-1) and HRT1 (hydraulic retention time) of 15 days, and OLR2 of 3.5 kg VS m(-3) d(-1) and HRT2 of 10 days, respectively. Results showed stable conditions during both periods. The methane yield was reduced when adding microalgae (from 200 +/- 25 NmL CH4 g VSin-1, to 168 +/- 22 NmL CH4 g VSin-1) but VS reduction was also decreased by 51%. This low digestibility was confirmed in the anaerobic batch test. However, adding microalgae improved the dewaterability of the digested sludge. The high heavy metals content in the microalgae resulted in a high heavy metals content in the digestate, making it more difficult to reuse the digestate as fertilizer on arable land. The heavy metals are thought to originate from the flue gas used as a CO2 source during the microalgae cultivation. Therefore the implementation of CO2 mitigation via algal cultivation requires careful consideration regarding the source of the CO2-rich gas.
机译:在这项研究中,在城市特征的废水中生长的微观血糖的自然组合在脂肪和半连续模式下,在融合条件下污水污泥共消化。将半连续实验分为两次,其中olr1(有机加载率)为2.4千克挥发性固体(vs)m(-3)d(-1)和hrt1(液压保留时间)为15天,olr2为3.5 kg与m(-3)d(-1)和10天的hrt2分别为10天。结果在两个时期显示出稳定的条件。添加微藻(从200 +/- 25 nml CH 4 G Vsin-1,达168 +/-22NML CH 4 GVSIN-1)时,甲烷产率降低,但随后还降低了51%。在厌氧间歇测试中证实了这种低消化率。然而,添加微藻改善了消化污泥的脱水性。微藻中的高重金属含量导致消化物中的高重金属含量,使重新利用消化物作为耕地上的肥料更加困难。据认为,重金属源自在微藻培养期间源自用作CO2源的烟气。因此,通过藻类栽培的二氧化碳减轻的实施需要仔细考虑富含二氧化碳的气体来源。

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